首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Understanding the spatio-temporal influence of climate variability on Australian heatwaves
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Understanding the spatio-temporal influence of climate variability on Australian heatwaves

机译:了解气候变异性对澳大利亚热艇的时空影响

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摘要

Some of the major drivers of extreme temperatures in Australia are related to large-scale variations in the climate. While many of the relationships between climate variability and heatwaves have been described, the preceding climate conditions and the circulation patterns responsible for interannual heatwave variations are still poorly understood. We have used rotated principal component analysis (PCA) to describe the variance of frequency, duration, magnitude and timing of Australian summer heatwaves. This provides a simple means of investigating both the spatial patterns of circulation and the preceding climate mode conditions of summer heatwaves. We find that spatial patterns of heatwave variability associated with El Nino-Southern Oscillation (ENSO) were focused in the north and northeast of Australia for heatwave occurrence. Patterns of heatwave amplitude in southeastern Australia were also weakly related to ENSO. The PCA did not find any direct, concurrent Indian Ocean Dipole (IOD) or Southern Annular Mode (SAM) signal. However, lead correlations indicate that winter IOD conditions can have a weak indirect effect on heatwave occurrence in northeast Australia and similarly, winter SAM conditions can affect heatwave timing in central eastern Australia. Regressions reveal that ENSO related heatwave duration and frequency in the northeast are related to the movement of the Walker circulation, while southeastern heatwave amplitude is associated with a north-south movement of the Tasman high pressure system. These results may lead to improvements in understanding the predictability and general preparedness for heatwaves in the summer season.
机译:澳大利亚极端温度的一些主要驱动因素与气候的大规模变异有关。虽然已经描述了气候变异性和散热之间的许多关系,但是仍然仍然不明显地理解了恒大的气候条件和负责持续的热波变异的循环模式。我们已经使用了旋转的主成分分析(PCA)来描述澳大利亚夏季散热器的频率,持续时间,幅度和时序的方差。这提供了一种简单的方法,可以研究夏季热浪的循环空间模式和前面的气候模式条件。我们发现与El Nino-Southern振荡(ENSO)相关的热浪变异性的空间模式集中在澳大利亚的北部和东北部进行热浪事件。澳大利亚东南部的热波幅度也与ENSO略微相关。 PCA没有找到任何直接,并发印度洋偶极子(IOD)或南方环形模式(SAM)信号。然而,铅相关形式表明,冬季IOD条件可能对澳大利亚东北地区的热浪事件具有薄弱的间接影响,同样,冬季SAM条件可以影响澳大利亚中部的热浪时机。回归揭示了东北的ENSO相关的热波持续时间和频率与步行者循环的运动有关,而东南部热波幅度与塔斯曼高压系统的南北运动相关联。这些结果可能导致了解夏季在夏季热浪的可预测性和一般准备方面的改进。

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